We develop a new model to understand and predict the behavior of oxide and silicate melts at extreme temperatures and pressures, including deep mantle conditions like those in the early Earth magma ocean. The Coordinated Hard Sphere Mixture (CHaSM) is based on an extension of the hard sphere mixture model, accounting for the range of coordination states available to each cation in the liquid. By utilizing approximate analytic expressions for the hard sphere model, this method is capable of predicting complex liquid structure and thermodynamics while remaining computationally efficient, requiring only minutes of calculation time on standard desktop computers. This modeling framework is applied to the MgO system, where model parameters are tr...
Silicate liquids play a key part at all stages of deep Earth evolution, ranging from core and crust ...
We develop a self-consistent thermodynamic description of silicate liquids applicable across the ent...
Modelling of processes involving deep Earth liquids requires information on their structures and com...
We develop a new model to understand and predict the behavior of oxide and silicate melts at extreme...
With ab initio molecular dynamics simulations on pyrolite melt, we examine the detailed changes in e...
A computational scheme to predict melting phase relations in multi-component systems at high pressur...
The crystallization of a magma ocean (MO) early in Earth's history shaped the entire evolution of ou...
The structure and physical properties of hydrous silicate melts and the solubility of water in melts...
International audienceThe crystallization of a magma ocean (MO) early in Earth's history shaped the ...
Early in the history of terrestrial planet, heat of accreation, radioactive deacay and core-mantle s...
A set of thermodynamic models suitable for mantle mineral phases, accompanied by a mafic melt model,...
Objectives: Our aims were (1) Large particle-number Molecular Dynamics (MD) simulations of molten si...
Modelling of processes involving deep Earth liquids requires information on their structures and com...
CaMgSi2O6 and CaSiO3 liquids have been investigated over the entire mantle pressure regime using fir...
We explore Fe-bearing Mg-silicate melts through the pressure regime of the Earth’s mantle using Firs...
Silicate liquids play a key part at all stages of deep Earth evolution, ranging from core and crust ...
We develop a self-consistent thermodynamic description of silicate liquids applicable across the ent...
Modelling of processes involving deep Earth liquids requires information on their structures and com...
We develop a new model to understand and predict the behavior of oxide and silicate melts at extreme...
With ab initio molecular dynamics simulations on pyrolite melt, we examine the detailed changes in e...
A computational scheme to predict melting phase relations in multi-component systems at high pressur...
The crystallization of a magma ocean (MO) early in Earth's history shaped the entire evolution of ou...
The structure and physical properties of hydrous silicate melts and the solubility of water in melts...
International audienceThe crystallization of a magma ocean (MO) early in Earth's history shaped the ...
Early in the history of terrestrial planet, heat of accreation, radioactive deacay and core-mantle s...
A set of thermodynamic models suitable for mantle mineral phases, accompanied by a mafic melt model,...
Objectives: Our aims were (1) Large particle-number Molecular Dynamics (MD) simulations of molten si...
Modelling of processes involving deep Earth liquids requires information on their structures and com...
CaMgSi2O6 and CaSiO3 liquids have been investigated over the entire mantle pressure regime using fir...
We explore Fe-bearing Mg-silicate melts through the pressure regime of the Earth’s mantle using Firs...
Silicate liquids play a key part at all stages of deep Earth evolution, ranging from core and crust ...
We develop a self-consistent thermodynamic description of silicate liquids applicable across the ent...
Modelling of processes involving deep Earth liquids requires information on their structures and com...